(CAS 143218-48-8): A Novel Anionic Modifier for Surface Functionalization - Chennai
| Location: |
Chintadripet, Chennai
|
| Posted By: | uchemsales |
| Phone: | N/A |
| Posted On: | 18-June-2026 15:27 PM |
Location
Description
3-Chloro-2-hydroxy-1-propanesulfonic Acid Sodium Salt Hydrate CAS:143218-48-8 is a versatile anionic reagent widely used in surface modification, materials science, and cellulose research. Featuring both a reactive chlorohydrin group and a sulfonate functionality, this compound enables the introduction of stable anionic charges onto a variety of substrates.
As a novel anionic agent, it is particularly valuable for tailoring surface properties and controlling interfacial interactions in advanced material systems. The sulfonate group provides strong negative charge characteristics, while the reactive chlorohydrin moiety facilitates covalent attachment to hydroxyl-containing materials.
In cellulose and fiber research, 3-Chloro-2-hydroxy-1-propanesulfonic Acid Sodium Salt Hydrate has been used to prepare negatively charged probe particles for investigating the effects of cellulosic fiber nanoporosity on streaming potential and interactions with cationic polyelectrolytes. Its use enables researchers to better understand fiber surface chemistry and electrostatic behavior in complex systems.
The compound has also been employed in the preparation of surface-derivatized microcrystalline cellulose (MCC) particles with controlled zeta potential characteristics. By introducing strong anionic functionalities, researchers can design cellulose-based materials with tailored surface charge properties for applications in colloidal systems, adsorption studies, and functional materials development.
Beyond cellulose modification, this anionic reagent has potential applications in polymer functionalization, surface engineering, and specialty material synthesis where controlled charge density and surface performance are required.
UCHEM supplies 3-Chloro-2-hydroxy-1-propanesulfonic Acid Sodium Salt Hydrate (CAS: 143218-48-8) with stable quality and reliable availability, supporting research and industrial development projects.